GenerateUnicodeData.cpp 23 KB

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  1. /*
  2. * Copyright (c) 2021, Tim Flynn <trflynn89@pm.me>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/AllOf.h>
  7. #include <AK/Array.h>
  8. #include <AK/CharacterTypes.h>
  9. #include <AK/HashMap.h>
  10. #include <AK/Optional.h>
  11. #include <AK/QuickSort.h>
  12. #include <AK/SourceGenerator.h>
  13. #include <AK/String.h>
  14. #include <AK/StringUtils.h>
  15. #include <AK/Types.h>
  16. #include <AK/Vector.h>
  17. #include <LibCore/ArgsParser.h>
  18. #include <LibCore/File.h>
  19. // Some code points are excluded from UnicodeData.txt, and instead are part of a "range" of code
  20. // points, as indicated by the "name" field. For example:
  21. // 3400;<CJK Ideograph Extension A, First>;Lo;0;L;;;;;N;;;;;
  22. // 4DBF;<CJK Ideograph Extension A, Last>;Lo;0;L;;;;;N;;;;;
  23. struct CodePointRange {
  24. u32 index;
  25. u32 first;
  26. u32 last;
  27. };
  28. // SpecialCasing source: https://www.unicode.org/Public/13.0.0/ucd/SpecialCasing.txt
  29. // Field descriptions: https://www.unicode.org/reports/tr44/tr44-13.html#SpecialCasing.txt
  30. struct SpecialCasing {
  31. u32 index { 0 };
  32. u32 code_point { 0 };
  33. Vector<u32> lowercase_mapping;
  34. Vector<u32> uppercase_mapping;
  35. Vector<u32> titlecase_mapping;
  36. String locale;
  37. String condition;
  38. };
  39. // PropList source: https://www.unicode.org/Public/13.0.0/ucd/PropList.txt
  40. // Property descriptions: https://www.unicode.org/reports/tr44/tr44-13.html#PropList.txt
  41. // https://www.unicode.org/reports/tr44/tr44-13.html#WordBreakProperty.txt
  42. using PropList = HashMap<String, Vector<CodePointRange>>;
  43. // UnicodeData source: https://www.unicode.org/Public/13.0.0/ucd/UnicodeData.txt
  44. // Field descriptions: https://www.unicode.org/reports/tr44/tr44-13.html#UnicodeData.txt
  45. // https://www.unicode.org/reports/tr44/#General_Category_Values
  46. struct CodePointData {
  47. u32 index { 0 };
  48. u32 code_point { 0 };
  49. String name;
  50. String general_category;
  51. u8 canonical_combining_class { 0 };
  52. String bidi_class;
  53. String decomposition_type;
  54. Optional<i8> numeric_value_decimal;
  55. Optional<i8> numeric_value_digit;
  56. Optional<i8> numeric_value_numeric;
  57. bool bidi_mirrored { false };
  58. String unicode_1_name;
  59. String iso_comment;
  60. Optional<u32> simple_uppercase_mapping;
  61. Optional<u32> simple_lowercase_mapping;
  62. Optional<u32> simple_titlecase_mapping;
  63. Vector<u32> special_casing_indices;
  64. Vector<StringView> prop_list;
  65. StringView word_break_property;
  66. };
  67. struct UnicodeData {
  68. Vector<SpecialCasing> special_casing;
  69. u32 largest_casing_transform_size { 0 };
  70. u32 largest_special_casing_size { 0 };
  71. Vector<String> locales;
  72. Vector<String> conditions;
  73. Vector<CodePointData> code_point_data;
  74. Vector<CodePointRange> code_point_ranges;
  75. Vector<String> general_categories;
  76. u32 last_contiguous_code_point { 0 };
  77. PropList prop_list;
  78. u32 largest_prop_list_size { 0 };
  79. PropList word_break_prop_list;
  80. };
  81. static constexpr auto s_desired_fields = Array {
  82. "general_category"sv,
  83. "simple_uppercase_mapping"sv,
  84. "simple_lowercase_mapping"sv,
  85. };
  86. static void parse_special_casing(Core::File& file, UnicodeData& unicode_data)
  87. {
  88. auto parse_code_point_list = [&](auto const& line) {
  89. Vector<u32> code_points;
  90. auto segments = line.split(' ');
  91. for (auto const& code_point : segments)
  92. code_points.append(AK::StringUtils::convert_to_uint_from_hex<u32>(code_point).value());
  93. return code_points;
  94. };
  95. while (file.can_read_line()) {
  96. auto line = file.read_line();
  97. if (line.is_empty() || line.starts_with('#'))
  98. continue;
  99. if (auto index = line.find('#'); index.has_value())
  100. line = line.substring(0, *index);
  101. auto segments = line.split(';', true);
  102. VERIFY(segments.size() == 5 || segments.size() == 6);
  103. SpecialCasing casing {};
  104. casing.index = static_cast<u32>(unicode_data.special_casing.size());
  105. casing.code_point = AK::StringUtils::convert_to_uint_from_hex<u32>(segments[0]).value();
  106. casing.lowercase_mapping = parse_code_point_list(segments[1]);
  107. casing.titlecase_mapping = parse_code_point_list(segments[2]);
  108. casing.uppercase_mapping = parse_code_point_list(segments[3]);
  109. if (auto condition = segments[4].trim_whitespace(); !condition.is_empty()) {
  110. auto conditions = condition.split(' ', true);
  111. VERIFY(conditions.size() == 1 || conditions.size() == 2);
  112. if (conditions.size() == 2) {
  113. casing.locale = move(conditions[0]);
  114. casing.condition = move(conditions[1]);
  115. } else if (all_of(conditions[0], is_ascii_lower_alpha)) {
  116. casing.locale = move(conditions[0]);
  117. } else {
  118. casing.condition = move(conditions[0]);
  119. }
  120. casing.locale = casing.locale.to_uppercase();
  121. casing.condition.replace("_", "", true);
  122. if (!casing.locale.is_empty() && !unicode_data.locales.contains_slow(casing.locale))
  123. unicode_data.locales.append(casing.locale);
  124. if (!casing.condition.is_empty() && !unicode_data.conditions.contains_slow(casing.condition))
  125. unicode_data.conditions.append(casing.condition);
  126. }
  127. unicode_data.largest_casing_transform_size = max(unicode_data.largest_casing_transform_size, casing.lowercase_mapping.size());
  128. unicode_data.largest_casing_transform_size = max(unicode_data.largest_casing_transform_size, casing.titlecase_mapping.size());
  129. unicode_data.largest_casing_transform_size = max(unicode_data.largest_casing_transform_size, casing.uppercase_mapping.size());
  130. unicode_data.special_casing.append(move(casing));
  131. }
  132. }
  133. static void parse_prop_list(Core::File& file, PropList& prop_list)
  134. {
  135. while (file.can_read_line()) {
  136. auto line = file.read_line();
  137. if (line.is_empty() || line.starts_with('#'))
  138. continue;
  139. if (auto index = line.find('#'); index.has_value())
  140. line = line.substring(0, *index);
  141. auto segments = line.split_view(';', true);
  142. VERIFY(segments.size() == 2);
  143. auto code_point_range = segments[0].trim_whitespace();
  144. auto property = segments[1].trim_whitespace().to_string();
  145. property.replace("_", "", true);
  146. auto& code_points = prop_list.ensure(property);
  147. if (code_point_range.contains(".."sv)) {
  148. segments = code_point_range.split_view(".."sv);
  149. VERIFY(segments.size() == 2);
  150. auto begin = AK::StringUtils::convert_to_uint_from_hex<u32>(segments[0]).value();
  151. auto end = AK::StringUtils::convert_to_uint_from_hex<u32>(segments[1]).value();
  152. code_points.append({ 0, begin, end });
  153. } else {
  154. auto code_point = AK::StringUtils::convert_to_uint_from_hex<u32>(code_point_range).value();
  155. code_points.append({ 0, code_point, code_point });
  156. }
  157. }
  158. }
  159. static void parse_unicode_data(Core::File& file, UnicodeData& unicode_data)
  160. {
  161. Optional<u32> code_point_range_start;
  162. Optional<u32> code_point_range_index;
  163. Optional<u32> last_contiguous_code_point;
  164. u32 previous_code_point = 0;
  165. while (file.can_read_line()) {
  166. auto line = file.read_line();
  167. if (line.is_empty())
  168. continue;
  169. auto segments = line.split(';', true);
  170. VERIFY(segments.size() == 15);
  171. CodePointData data {};
  172. data.index = static_cast<u32>(unicode_data.code_point_data.size());
  173. data.code_point = AK::StringUtils::convert_to_uint_from_hex<u32>(segments[0]).value();
  174. data.name = move(segments[1]);
  175. data.general_category = move(segments[2]);
  176. data.canonical_combining_class = AK::StringUtils::convert_to_uint<u8>(segments[3]).value();
  177. data.bidi_class = move(segments[4]);
  178. data.decomposition_type = move(segments[5]);
  179. data.numeric_value_decimal = AK::StringUtils::convert_to_int<i8>(segments[6]);
  180. data.numeric_value_digit = AK::StringUtils::convert_to_int<i8>(segments[7]);
  181. data.numeric_value_numeric = AK::StringUtils::convert_to_int<i8>(segments[8]);
  182. data.bidi_mirrored = segments[9] == "Y"sv;
  183. data.unicode_1_name = move(segments[10]);
  184. data.iso_comment = move(segments[11]);
  185. data.simple_uppercase_mapping = AK::StringUtils::convert_to_uint_from_hex<u32>(segments[12]);
  186. data.simple_lowercase_mapping = AK::StringUtils::convert_to_uint_from_hex<u32>(segments[13]);
  187. data.simple_titlecase_mapping = AK::StringUtils::convert_to_uint_from_hex<u32>(segments[14]);
  188. if (data.name.starts_with("<"sv) && data.name.ends_with(", First>")) {
  189. VERIFY(!code_point_range_start.has_value() && !code_point_range_index.has_value());
  190. code_point_range_start = data.code_point;
  191. code_point_range_index = data.index;
  192. data.name = data.name.substring(1, data.name.length() - 9);
  193. } else if (data.name.starts_with("<"sv) && data.name.ends_with(", Last>")) {
  194. VERIFY(code_point_range_start.has_value() && code_point_range_index.has_value());
  195. unicode_data.code_point_ranges.append({ *code_point_range_index, *code_point_range_start, data.code_point });
  196. data.name = data.name.substring(1, data.name.length() - 8);
  197. code_point_range_start.clear();
  198. code_point_range_index.clear();
  199. } else if ((data.code_point > 0) && (data.code_point - previous_code_point) != 1) {
  200. if (!last_contiguous_code_point.has_value())
  201. last_contiguous_code_point = previous_code_point;
  202. }
  203. for (auto const& casing : unicode_data.special_casing) {
  204. if (casing.code_point == data.code_point)
  205. data.special_casing_indices.append(casing.index);
  206. }
  207. for (auto const& property : unicode_data.prop_list) {
  208. for (auto const& range : property.value) {
  209. if ((range.first <= data.code_point) && (data.code_point <= range.last)) {
  210. data.prop_list.append(property.key);
  211. break;
  212. }
  213. }
  214. }
  215. for (auto const& property : unicode_data.word_break_prop_list) {
  216. for (auto const& range : property.value) {
  217. if ((range.first <= data.code_point) && (data.code_point <= range.last)) {
  218. data.word_break_property = property.key;
  219. break;
  220. }
  221. }
  222. if (!data.word_break_property.is_empty())
  223. break;
  224. }
  225. if (data.word_break_property.is_empty())
  226. data.word_break_property = "Other"sv;
  227. unicode_data.largest_special_casing_size = max(unicode_data.largest_special_casing_size, data.special_casing_indices.size());
  228. unicode_data.largest_prop_list_size = max(unicode_data.largest_prop_list_size, data.prop_list.size());
  229. if (!unicode_data.general_categories.contains_slow(data.general_category))
  230. unicode_data.general_categories.append(data.general_category);
  231. previous_code_point = data.code_point;
  232. unicode_data.code_point_data.append(move(data));
  233. }
  234. unicode_data.last_contiguous_code_point = *last_contiguous_code_point;
  235. }
  236. static void generate_unicode_data_header(UnicodeData& unicode_data)
  237. {
  238. StringBuilder builder;
  239. SourceGenerator generator { builder };
  240. generator.set("casing_transform_size", String::number(unicode_data.largest_casing_transform_size));
  241. generator.set("special_casing_size", String::number(unicode_data.largest_special_casing_size));
  242. generator.set("prop_list_size", String::number(unicode_data.largest_prop_list_size));
  243. auto generate_enum = [&](StringView name, StringView default_, Vector<String> values) {
  244. quick_sort(values);
  245. generator.set("name", name);
  246. generator.append(R"~~~(
  247. enum class @name@ {)~~~");
  248. if (!default_.is_empty())
  249. values.prepend(default_);
  250. for (auto const& value : values) {
  251. generator.set("value", value);
  252. generator.append(R"~~~(
  253. @value@,)~~~");
  254. }
  255. generator.append(R"~~~(
  256. };
  257. )~~~");
  258. };
  259. generator.append(R"~~~(
  260. #pragma once
  261. #include <AK/Optional.h>
  262. #include <AK/Types.h>
  263. namespace Unicode {
  264. )~~~");
  265. generate_enum("Locale"sv, "None"sv, move(unicode_data.locales));
  266. generate_enum("Condition"sv, "None"sv, move(unicode_data.conditions));
  267. generate_enum("GeneralCategory"sv, {}, move(unicode_data.general_categories));
  268. generate_enum("Property"sv, {}, unicode_data.prop_list.keys());
  269. generate_enum("WordBreakProperty"sv, "Other"sv, unicode_data.word_break_prop_list.keys());
  270. generator.append(R"~~~(
  271. struct SpecialCasing {
  272. u32 code_point { 0 };
  273. u32 lowercase_mapping[@casing_transform_size@];
  274. u32 lowercase_mapping_size { 0 };
  275. u32 uppercase_mapping[@casing_transform_size@];
  276. u32 uppercase_mapping_size { 0 };
  277. u32 titlecase_mapping[@casing_transform_size@];
  278. u32 titlecase_mapping_size { 0 };
  279. Locale locale { Locale::None };
  280. Condition condition { Condition::None };
  281. };
  282. struct UnicodeData {
  283. u32 code_point;)~~~");
  284. auto append_field = [&](StringView type, StringView name) {
  285. if (!s_desired_fields.span().contains_slow(name))
  286. return;
  287. generator.set("type", type);
  288. generator.set("name", name);
  289. generator.append(R"~~~(
  290. @type@ @name@;)~~~");
  291. };
  292. // Note: For compile-time performance, only primitive types are used.
  293. append_field("char const*"sv, "name"sv);
  294. append_field("GeneralCategory"sv, "general_category"sv);
  295. append_field("u8"sv, "canonical_combining_class"sv);
  296. append_field("char const*"sv, "bidi_class"sv);
  297. append_field("char const*"sv, "decomposition_type"sv);
  298. append_field("i8"sv, "numeric_value_decimal"sv);
  299. append_field("i8"sv, "numeric_value_digit"sv);
  300. append_field("i8"sv, "numeric_value_numeric"sv);
  301. append_field("bool"sv, "bidi_mirrored"sv);
  302. append_field("char const*"sv, "unicode_1_name"sv);
  303. append_field("char const*"sv, "iso_comment"sv);
  304. append_field("u32"sv, "simple_uppercase_mapping"sv);
  305. append_field("u32"sv, "simple_lowercase_mapping"sv);
  306. append_field("u32"sv, "simple_titlecase_mapping"sv);
  307. generator.append(R"~~~(
  308. SpecialCasing const* special_casing[@special_casing_size@] {};
  309. u32 special_casing_size { 0 };
  310. Property prop_list[@prop_list_size@] {};
  311. u32 prop_list_size { 0 };
  312. WordBreakProperty word_break_property { WordBreakProperty::Other };
  313. };
  314. Optional<UnicodeData> unicode_data_for_code_point(u32 code_point);
  315. })~~~");
  316. outln("{}", generator.as_string_view());
  317. }
  318. static void generate_unicode_data_implementation(UnicodeData unicode_data)
  319. {
  320. StringBuilder builder;
  321. SourceGenerator generator { builder };
  322. generator.set("special_casing_size", String::number(unicode_data.special_casing.size()));
  323. generator.set("code_point_data_size", String::number(unicode_data.code_point_data.size()));
  324. generator.set("last_contiguous_code_point", String::formatted("0x{:x}", unicode_data.last_contiguous_code_point));
  325. generator.append(R"~~~(
  326. #include <AK/Array.h>
  327. #include <AK/CharacterTypes.h>
  328. #include <AK/Find.h>
  329. #include <LibUnicode/UnicodeData.h>
  330. namespace Unicode {
  331. )~~~");
  332. auto append_list_and_size = [&](auto const& list, StringView format) {
  333. if (list.is_empty()) {
  334. generator.append(", {}, 0");
  335. return;
  336. }
  337. bool first = true;
  338. generator.append(", {");
  339. for (auto const& item : list) {
  340. generator.append(first ? " " : ", ");
  341. generator.append(String::formatted(format, item));
  342. first = false;
  343. }
  344. generator.append(String::formatted(" }}, {}", list.size()));
  345. };
  346. generator.append(R"~~~(
  347. static constexpr Array<SpecialCasing, @special_casing_size@> s_special_casing { {)~~~");
  348. for (auto const& casing : unicode_data.special_casing) {
  349. generator.set("code_point", String::formatted("{:#x}", casing.code_point));
  350. generator.append(R"~~~(
  351. { @code_point@)~~~");
  352. constexpr auto format = "0x{:x}"sv;
  353. append_list_and_size(casing.lowercase_mapping, format);
  354. append_list_and_size(casing.uppercase_mapping, format);
  355. append_list_and_size(casing.titlecase_mapping, format);
  356. generator.set("locale", casing.locale.is_empty() ? "None" : casing.locale);
  357. generator.append(", Locale::@locale@");
  358. generator.set("condition", casing.condition.is_empty() ? "None" : casing.condition);
  359. generator.append(", Condition::@condition@");
  360. generator.append(" },");
  361. }
  362. generator.append(R"~~~(
  363. } };
  364. static constexpr Array<UnicodeData, @code_point_data_size@> s_unicode_data { {)~~~");
  365. auto append_field = [&](StringView name, String value) {
  366. if (!s_desired_fields.span().contains_slow(name))
  367. return;
  368. generator.set("value", move(value));
  369. generator.append(", @value@");
  370. };
  371. for (auto const& data : unicode_data.code_point_data) {
  372. generator.set("code_point", String::formatted("{:#x}", data.code_point));
  373. generator.append(R"~~~(
  374. { @code_point@)~~~");
  375. append_field("name", String::formatted("\"{}\"", data.name));
  376. append_field("general_category", String::formatted("GeneralCategory::{}", data.general_category));
  377. append_field("canonical_combining_class", String::number(data.canonical_combining_class));
  378. append_field("bidi_class", String::formatted("\"{}\"", data.bidi_class));
  379. append_field("decomposition_type", String::formatted("\"{}\"", data.decomposition_type));
  380. append_field("numeric_value_decimal", String::number(data.numeric_value_decimal.value_or(-1)));
  381. append_field("numeric_value_digit", String::number(data.numeric_value_digit.value_or(-1)));
  382. append_field("numeric_value_numeric", String::number(data.numeric_value_numeric.value_or(-1)));
  383. append_field("bidi_mirrored", String::formatted("{}", data.bidi_mirrored));
  384. append_field("unicode_1_name", String::formatted("\"{}\"", data.unicode_1_name));
  385. append_field("iso_comment", String::formatted("\"{}\"", data.iso_comment));
  386. append_field("simple_uppercase_mapping", String::formatted("{:#x}", data.simple_uppercase_mapping.value_or(data.code_point)));
  387. append_field("simple_lowercase_mapping", String::formatted("{:#x}", data.simple_lowercase_mapping.value_or(data.code_point)));
  388. append_field("simple_titlecase_mapping", String::formatted("{:#x}", data.simple_titlecase_mapping.value_or(data.code_point)));
  389. append_list_and_size(data.special_casing_indices, "&s_special_casing[{}]"sv);
  390. append_list_and_size(data.prop_list, "Property::{}"sv);
  391. generator.append(String::formatted(", WordBreakProperty::{}", data.word_break_property));
  392. generator.append(" },");
  393. }
  394. generator.append(R"~~~(
  395. } };
  396. static Optional<u32> index_of_code_point_in_range(u32 code_point)
  397. {)~~~");
  398. for (auto const& range : unicode_data.code_point_ranges) {
  399. generator.set("index", String::formatted("{}", range.index));
  400. generator.set("first", String::formatted("{:#x}", range.first));
  401. generator.set("last", String::formatted("{:#x}", range.last));
  402. generator.append(R"~~~(
  403. if ((code_point > @first@) && (code_point < @last@))
  404. return @index@;)~~~");
  405. }
  406. generator.append(R"~~~(
  407. return {};
  408. }
  409. Optional<UnicodeData> unicode_data_for_code_point(u32 code_point)
  410. {
  411. VERIFY(is_unicode(code_point));
  412. if (code_point <= @last_contiguous_code_point@)
  413. return s_unicode_data[code_point];
  414. if (auto index = index_of_code_point_in_range(code_point); index.has_value()) {
  415. auto data_for_range = s_unicode_data[*index];
  416. data_for_range.simple_uppercase_mapping = code_point;
  417. data_for_range.simple_lowercase_mapping = code_point;
  418. return data_for_range;
  419. }
  420. auto it = AK::find_if(s_unicode_data.begin(), s_unicode_data.end(), [code_point](auto const& data) { return data.code_point == code_point; });
  421. if (it != s_unicode_data.end())
  422. return *it;
  423. return {};
  424. }
  425. })~~~");
  426. outln("{}", generator.as_string_view());
  427. }
  428. int main(int argc, char** argv)
  429. {
  430. bool generate_header = false;
  431. bool generate_implementation = false;
  432. char const* unicode_data_path = nullptr;
  433. char const* special_casing_path = nullptr;
  434. char const* prop_list_path = nullptr;
  435. char const* word_break_path = nullptr;
  436. Core::ArgsParser args_parser;
  437. args_parser.add_option(generate_header, "Generate the Unicode Data header file", "generate-header", 'h');
  438. args_parser.add_option(generate_implementation, "Generate the Unicode Data implementation file", "generate-implementation", 'c');
  439. args_parser.add_option(unicode_data_path, "Path to UnicodeData.txt file", "unicode-data-path", 'u', "unicode-data-path");
  440. args_parser.add_option(special_casing_path, "Path to SpecialCasing.txt file", "special-casing-path", 's', "special-casing-path");
  441. args_parser.add_option(prop_list_path, "Path to PropList.txt file", "prop-list-path", 'p', "prop-list-path");
  442. args_parser.add_option(word_break_path, "Path to WordBreakProperty.txt file", "word-break-path", 'w', "word-break-path");
  443. args_parser.parse(argc, argv);
  444. if (!generate_header && !generate_implementation) {
  445. warnln("At least one of -h/--generate-header or -c/--generate-implementation is required");
  446. args_parser.print_usage(stderr, argv[0]);
  447. return 1;
  448. }
  449. auto open_file = [&](StringView path, StringView flags) {
  450. if (path.is_empty()) {
  451. warnln("{} is required", flags);
  452. args_parser.print_usage(stderr, argv[0]);
  453. exit(1);
  454. }
  455. auto file_or_error = Core::File::open(path, Core::OpenMode::ReadOnly);
  456. if (file_or_error.is_error()) {
  457. warnln("Failed to open {}: {}", path, file_or_error.release_error());
  458. exit(1);
  459. }
  460. return file_or_error.release_value();
  461. };
  462. auto unicode_data_file = open_file(unicode_data_path, "-u/--unicode-data-path");
  463. auto special_casing_file = open_file(special_casing_path, "-s/--special-casing-path");
  464. auto prop_list_file = open_file(prop_list_path, "-p/--prop-list-path");
  465. auto word_break_file = open_file(word_break_path, "-w/--word-break-path");
  466. UnicodeData unicode_data {};
  467. parse_special_casing(special_casing_file, unicode_data);
  468. parse_prop_list(prop_list_file, unicode_data.prop_list);
  469. parse_prop_list(word_break_file, unicode_data.word_break_prop_list);
  470. parse_unicode_data(unicode_data_file, unicode_data);
  471. if (generate_header)
  472. generate_unicode_data_header(unicode_data);
  473. if (generate_implementation)
  474. generate_unicode_data_implementation(move(unicode_data));
  475. return 0;
  476. }